Recombinant Human ATP5A1 protein, MYC/DDK-tagged

Cat.No. : ATP5A1-8606H
Product Overview : Recombinant Human ATP5A1, fussed with MYC/DDK at C-terminal, was expressed in HEK293.
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Source : HEK293
Species : Human
Tag : Myc&DDK
Form : 25 mM Tris.HCl, pH 7.3, 100 mM glycine, 10% glycerol.
Molecular Mass : 55.2 kDa
Purity : > 80% as determined by SDS-PAGE and Coomassie blue staining
Notes : Recombinant protein was captured through anti-DDK affinity column followed by conventional chromatography steps.
Concentration : >50 ug/mL as determined by microplate BCA method
Gene Name ATP5A1 ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1, cardiac muscle [ Homo sapiens ]
Official Symbol ATP5A1
Synonyms ATP5A1; ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1, cardiac muscle; ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit, isoform 1, cardiac muscle , ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit, isoform 2, non cardiac muscle like 2 , ATP5AL2, ATPM; ATP synthase subunit alpha, mitochondrial; ATP5A; hATP1; OMR; ORM; ATP sythase (F1-ATPase) alpha subunit; ATP synthase alpha chain, mitochondrial; mitochondrial ATP synthetase, oligomycin-resistant; ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit, isoform 1, cardiac muscle; ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit, isoform 2, non-cardiac muscle-like 2; ATPM; MOM2; ATP5AL2;
Gene ID 498
mRNA Refseq NM_004046
Protein Refseq NP_004037
MIM 164360
UniProt ID P25705
Chromosome Location 18q21
Pathway Alzheimers disease, organism-specific biosystem; Alzheimers disease, conserved biosystem; Electron Transport Chain, organism-specific biosystem; F-type ATPase, eukaryotes, organism-specific biosystem; Formation of ATP by chemiosmotic coupling, organism-specific biosystem; Huntingtons disease, organism-specific biosystem; Huntingtons disease, conserved biosystem;
Function ADP binding; ATP binding; contributes_to ATPase activity; MHC class I protein binding; eukaryotic cell surface binding; hydrogen ion transporting ATP synthase activity, rotational mechanism; hydrolase activity, acting on acid anhydrides, catalyzing transmembrane movement of substances; nucleotide binding; protein binding; proton-transporting ATPase activity, rotational mechanism; transmembrane transporter activity;

Not For Human Consumption!

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